On the modelling of two-phase flow in the cathode gas diffusion layer of a polymer electrolyte fuel cell

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摘要

A front-tracking approach is derived for the numerical solution of the equations arising in the multi-fluid model for isothermal multiphase multicomponent flow in the gas diffusion layer of the cathode of a polymer electrolyte fuel cell under conditions of local thermodynamic equilibrium. The method is able to find the location of the one-phase/two-phase interface explicitly and without need for the artificial diffusion, smoothing and ad hoc source terms that are required in existing formulations. Also, the analysis indicates the presence of a previously unidentified integrable singularity, which can be removed provided that the dependent variables are chosen correctly. For quantitative comparison, a benchmark example is implemented using both approaches in the commercially available finite-element software Comsol Multiphysics.

论文关键词:Polymer electrolyte fuel cell,Gas diffusion layer,Multi-fluid model,Multicomponent flow,ALE formulation

论文评审过程:Available online 20 December 2006.

论文官网地址:https://doi.org/10.1016/j.amc.2006.12.040